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Oscillators
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XTAL OSC TCXO 50MHZ 3.3V HCMOS
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RTXE-124ED333-C-50.000-TRRaltron ElectronicsXTAL OSC TCXO 50MHZ 3.3V HCMOS
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XTAL OSC XO 25.0000MHZ HCMOS SMD
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COM118025-25.000-EXT-T-TRRaltron ElectronicsXTAL OSC XO 25.0000MHZ HCMOS SMD
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XTAL OSC XO 24MHZ 3.3V HCMOS
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CO2520-24.000-3.3-50-EXT-T-TRRaltron ElectronicsXTAL OSC XO 24MHZ 3.3V HCMOS
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XTAL OSC TCXO 16MHZ 3.3V HCMOS
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RTXE-2016ED333-C-16.000-TRRaltron ElectronicsXTAL OSC TCXO 16MHZ 3.3V HCMOS
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XTAL OSC TCXO 25MHZ 1.8V CLP SNW
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RTX-104CD31-S-25.000-TRRaltron ElectronicsXTAL OSC TCXO 25MHZ 1.8V CLP SNW
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XTAL OSC XO 66.6660MHZ CMOS SMD
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CO4605-66.666-EXT-T-TRRaltron ElectronicsXTAL OSC XO 66.6660MHZ CMOS SMD
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XTAL OSC XO 50MHZ 2.5V LVDS
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CL5032-50.000-2.5-25-X-T-TRRaltron ElectronicsXTAL OSC XO 50MHZ 2.5V LVDS
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XTAL OSC OCXO 20MHZ 3.3V SMD
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OX4150A-D3-1-20.000-3.3-7Raltron ElectronicsXTAL OSC OCXO 20MHZ 3.3V SMD
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XTAL OSC TCXO 25MHZ 3.3V CMOS
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TX257A-LZ-0.28-25.000-3-4-TRRaltron ElectronicsXTAL OSC TCXO 25MHZ 3.3V CMOS
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XTAL OSC TCXO 26MHZ 3.3V HCMOS
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RTXE-104ED333-C-26.000-TRRaltron ElectronicsXTAL OSC TCXO 26MHZ 3.3V HCMOS
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XTAL OSC TCXO 20MHZ CLP SNW
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RTX-104EHZC-S-20.000-TRRaltron ElectronicsXTAL OSC TCXO 20MHZ CLP SNW
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XTAL OSC TCXO 10MHZ 3.3V HCMOS
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RTXE-2520EF133-C-10.000-TRRaltron ElectronicsXTAL OSC TCXO 10MHZ 3.3V HCMOS
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XTAL OSC XO 4.0960MHZ CMOS SMD
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CO4305-4.096-EXT-T-TRRaltron ElectronicsXTAL OSC XO 4.0960MHZ CMOS SMD
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XTAL OSC OCXO 38.880MHZ 3.3V SMD
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OX4150A-D1-0.5-38.880-3.3-7Raltron ElectronicsXTAL OSC OCXO 38.880MHZ 3.3V SMD
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XTAL OSC XO 250MHZ 2.5V LVPECL
CP7050-250.000-2.5-25-X-T-TRRaltron ElectronicsXTAL OSC XO 250MHZ 2.5V LVPECL
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XTAL OSC XO 155.52MHZ 2.5V LVPEC
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CP5032-155.520-2.5-25-X-T-TRRaltron ElectronicsXTAL OSC XO 155.52MHZ 2.5V LVPEC
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XTAL OSC XO 25MHZ 2.5V LVDS
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CL7050-25.000-2.5-25-X-T-TRRaltron ElectronicsXTAL OSC XO 25MHZ 2.5V LVDS
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XTAL OSC XO 50.0000MHZ CMOS SMD
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COM2305-50.000-EXT-T-TRRaltron ElectronicsXTAL OSC XO 50.0000MHZ CMOS SMD
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XTAL OSC XO 10.0000MHZ TTL SMD
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CO4905-10.000-EXT-T-TRRaltron ElectronicsXTAL OSC XO 10.0000MHZ TTL SMD
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XTAL OSC XO 24MHZ 3.3V HCMOS
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CO4305-24.000-EXT-T-TRRaltron ElectronicsXTAL OSC XO 24MHZ 3.3V HCMOS
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Crystals, Oscillators, and Resonators serve as critical components in frequency control applications, each offering unique characteristics that make them suitable for different electronic design requirements. Crystals, typically crafted from precision-cut quartz, represent the foundational frequency-generating element, providing stability and precise frequency references with low aging rates and minimal temperature drift. Unlike standalone components, crystals require external oscillator circuitry to generate a usable clock signal, which can be both an advantage and limitation in circuit design. Oscillators build upon crystal technology by integrating the crystal with supporting circuitry, creating a self-contained frequency source that eliminates the need for additional external components. This integration offers advantages in complexity reduction and reliability. Advanced oscillator variants like TCXOs (Temperature-Compensated Crystal Oscillators) and VCXO (Voltage Controlled Crystal Oscillator) further enhance frequency stability through temperature compensation mechanisms, making them ideal for high-precision applications such as telecommunications, GPS systems, and network timing infrastructure. Resonators, in contrast, represent a more cost-effective alternative, typically manufactured from ceramic or Surface Acoustic Wave (SAW) materials. While inherently less precise than quartz crystals, resonators excel in applications prioritizing size, cost, and durability over extreme frequency accuracy. Their compact form factor and design make them particularly attractive for consumer electronics, automotive systems, and microcontroller-based designs where moderate frequency stability is acceptable. Resonators typically offer frequency tolerances in the range of ±0.5% to ±0.1%, compared to crystals' remarkable ±0.005% to ±0.05% precision. The selection between these components ultimately depends on a nuanced evaluation of application-specific requirements. Designers must carefully balance factors including frequency accuracy, temperature stability, power consumption, physical size, environmental resilience, and total system cost. For mission-critical systems demanding exceptional precision, quartz crystals and high-grade oscillators remain irreplaceable. Conversely, for cost-sensitive, less demanding applications, ceramic resonators provide an elegant and economical solution. For questions and further information on Crystals, Oscillators, or Resonators visit the Tech Forum. Some common frequencies are: 32.768 kHz – Used in real-time clocks (RTCs) and low-power timing applications. 32768Hz is 215 Hz. Allows binary division for 1 second intervals. 1.8432 MHz – Common for UART baud rate communication in microcontrollers. 1.8342MHz can be divided easily to create standard rates: 115,200 = 1843200/16, 57,600 =1843200/32, etc 16.000 MHz – Frequently used with microcontrollers such as the ATmega328P (Arduino), Zigbee, and Bluetooth BLE. 19.200 MHz – Found in wireless communication devices, such as mobile phones. Used as a reference clock for CDMA/GSM 23.104 MHz – Used for a reference clock for some GPS systems.